dc.creator | Marcilli R.H.M. | |
dc.creator | De Oliveira M.G. | |
dc.date | 2014 | |
dc.date | 2015-06-25T17:49:57Z | |
dc.date | 2015-11-26T15:27:45Z | |
dc.date | 2015-06-25T17:49:57Z | |
dc.date | 2015-11-26T15:27:45Z | |
dc.date.accessioned | 2018-03-28T22:36:25Z | |
dc.date.available | 2018-03-28T22:36:25Z | |
dc.identifier | | |
dc.identifier | Colloids And Surfaces B: Biointerfaces. Elsevier, v. 116, n. , p. 643 - 651, 2014. | |
dc.identifier | 9277765 | |
dc.identifier | 10.1016/j.colsurfb.2013.10.036 | |
dc.identifier | http://www.scopus.com/inward/record.url?eid=2-s2.0-84898806044&partnerID=40&md5=19d841d0a83da07cca5fd10f339de4d6 | |
dc.identifier | http://www.repositorio.unicamp.br/handle/REPOSIP/85746 | |
dc.identifier | http://repositorio.unicamp.br/jspui/handle/REPOSIP/85746 | |
dc.identifier | 2-s2.0-84898806044 | |
dc.identifier.uri | http://repositorioslatinoamericanos.uchile.cl/handle/2250/1261420 | |
dc.description | Pathological conditions associated with the impairment of nitric oxide (NO) production in the vasculature, such as Raynaud's syndrome and diabetic angiopathy, have stimulated the development of new biomaterials capable of delivering NO topically. With this purpose, we modified poly(vinyl-alcohol) (PVA) by chemically crosslinking it via esterification with mercaptosuccinic acid. This reaction allowed the casting of sulfhydrylated PVA (PVA-SH) films. Differential scanning calorimetry and X-ray diffractometry showed that the crosslinking reaction completely suppressed the crystallization of PVA, leading to a non-porous film with a homogeneous distribution of -SH groups. The remaining free hydroxyl groups in the PVA-SH network conferred partial hydrophylicity to the material, which was responsible for a swelling degree of ca. 110%. The PVA-SH films were subjected to an S-nitrosation reaction of the -SH groups, yielding a PVA containing S-nitrosothiol groups (PVA-SNO). Amperometric and chemiluminescence measurements showed that the PVA-SNO films were capable of releasing NO spontaneously after immersion in physiological medium. Laser Doppler-flowmetry, used to assess the blood flow in the dermal microcirculation, showed that the topical application of hydrated PVA-SNO films on the health skin led to a dose- and time-dependent increase of more than 5-fold in the dermal baseline blood flow in less than 10. min, with a prolonged action of more than 4. h during continuous application. These results show that PVA-SNO films might emerge as a new material with potential for the topical treatment of microvascular skin disorders. © 2013 Elsevier B.V. | |
dc.description | 116 | |
dc.description | | |
dc.description | 643 | |
dc.description | 651 | |
dc.description | Holowatz, L.A., Thompson-Torgerson, C.S., Kenney, W.L., The human cutaneous circulation as a model of generalized microvascular function (2008) J. Appl. Physiol., 105, pp. 370-372 | |
dc.description | Seabra, A.B., Fitzpatrick, A., Paul, J., de Oliveira, M.G., Weller, R., Topically applied S-nitrosothiol-containing hydrogels as experimental and pharmacological nitric oxide donors in human skin (2004) Br. J. Dermatol., 151, pp. 977-983 | |
dc.description | Turton, E., Vascular review: the aetiology of Raynaud's phenomenon (1998) Cardiovasc. Surg., 6, pp. 431-440 | |
dc.description | Tucker, A.T., Pearson, R.M., Cooke, E.D., Benjamin, N., Effect of nitric-oxide-generating system on microcirculatory blood flow in skin of patients with severe Raynaud's syndrome: a randomised trial (1999) Lancet, 354, pp. 1670-1675 | |
dc.description | Moncada, S., Radomski, M.W., Palmer, R.M., Endothelium-derived relaxing factor Identification as nitric oxide and role in the control of vascular tone and platelet function (1988) Biochem. Pharmacol., 37, pp. 2495-2501 | |
dc.description | Amadeu, T.P., Seabra, A.B., de Oliveira, M.G., Monte-Alto-Costa, A., Nitric oxide donor improves healing if applied on inflammatory and proliferative phase (2008) J. Surg. Res., 149, pp. 84-93 | |
dc.description | Kopeček, J., Yang, J., Hydrogels as smart biomaterials (2007) Polym. Int., 56, pp. 1078-1098 | |
dc.description | Seabra, A.B., Pankotai, E., Fehér, M., Somlai, L., Kiss, L., Bíró, C., Szabó, M., de Oliveira, Z., Lacza, S-nitrosoglutathione-containing hydrogel increases dermal blood flow in streptozotocin-induced diabetic rats (2007) Br. J. Dermatol., 156, pp. 814-818 | |
dc.description | Amadeu, T.P., Seabra, A.B., de Oliveira, M.G., Costa, A.M.A., S-nitrosoglutathione-containing hydrogel accelerates rat cutaneous wound repair, (2007) J. Eur. Acad. Dermatol. Venereol., 21, pp. 629-637 | |
dc.description | Georgii, J.L., Amadeu, T.P., Seabra, A.B., de Oliveira, M.G., Monte-Alto-Costa, A., Topical S-nitrosoglutathione-releasing hydrogel improves healing of rat ischaemic wounds (2011) J. Tissue Eng. Regen. Med., 5, pp. 612-619 | |
dc.description | Vercelino, R., Cunha, T.M., Ferreira, E.S., Cunha, F.Q., Ferreira, S.H., de Oliveira, M.G., Skin vasodilation and analgesic effect of a topical nitric oxide-releasing hydrogel (2013) J. Mater. Sci. Mater. Med. | |
dc.description | Frost, M.C., Reynolds, M.M., Meyerhoff, M.E., Polymers incorporating nitric oxide releasing/generating substances for improved biocompatibility of blood-contacting medical devices (2005) Biomaterials, 26, pp. 1685-1693 | |
dc.description | Damodaran, V.B., Joslin, J.M., Wold, K.A., Lantvit, S.M., Reynolds, M.M., S-Nitrosated biodegradable polymers for biomedical applications: synthesis, characterization and impact of thiol structure on the physicochemical properties (2012) J. Mater. Chem., 22, p. 5990 | |
dc.description | Simões, M.M.D., Oliveira, M.G., Poly(vinyl alcohol) films for topical delivery of S-nitrosoglutathione: effect of freezing-thawing on the diffusion properties, (2010) J. Biomed. Mater. Res. Part B: Appl. Biomater., 93, pp. 416-424 | |
dc.description | DeMerlis, C.C., Schoneker, D.R., Review of the oral toxicity of polyvinyl alcohol (PVA) (2003) Food Chem. Toxicol., 41, pp. 319-326 | |
dc.description | Jipa, I.M., Stroescu, M., Stoica-Guzun, A., Dobre, T., Jinga, S., Zaharescu, T., Effect of gamma irradiation on biopolymer composite films of poly(vinyl alcohol) and bacterial cellulose (2012) Nucl. Instrum. Methods Phys. Res., Sect. B, 278, pp. 82-87 | |
dc.description | Moritani, T., Okaya, T., Functional modification of poly(vinyl alcohol) by copolymerization: IV self-crosslinkable poly(vinyl alcohol)s (1998) Polymer, 39, pp. 923-931 | |
dc.description | Hasimi, A., Stavropoulou, A., Papadokostaki, K.G., Sanopoulou, M., Transport of water in polyvinyl alcohol films: effect of thermal treatment and chemical crosslinking (2008) Eur. Polym. J., 44, pp. 4098-4107 | |
dc.description | Chetri, P., Dass, N.N., Sen Sarma, N., Synthesis of poly(vinyl propionate) from poly(vinyl alcohol) in nonaqueous medium using ethyl nitrate dimethyl sulfoxide as a catalyst (2006) J. Appl. Polym. Sci., 102, pp. 5675-5679 | |
dc.description | Kim, D., Park, H., Rhim, J., Lee, Y., Proton conductivity and methanol transport behavior of cross-linked PVA/PAA/silica hybrid membranes (2005) Solid State Ionics, 176, pp. 117-126 | |
dc.description | Gomez, M., Domingo, J.L., Llobet, J.M., Corbella, J., Evaluation of the efficacy of various chelating agents on urinary excretion and tissue distribution of vanadium in rats (1991) Toxicol. Lett., 57, pp. 227-234 | |
dc.description | Arnold, A.P., Canty, A.J., Moors, P.W., Deacon, G.B., Chelation therapy for methylmercury(II) poisoning synthesis and determination of solubility properties of MeHg(II) complexes of thiol and dithiol antidotes (1983) J. Inorg. Biochem., 19, pp. 319-327 | |
dc.description | Maiorino, R.M., Aposhian, H.V., Determination and metabolism of dithiol chelating agents (1989) Biochem. Pharmacol., 38, pp. 1147-1154 | |
dc.description | Prudente, A., Riccetto, C.L.Z., Simões, M.M.D., Pires, B.M., Oliveira, M.G., Impregnation of implantable polypropylene mesh with S-nitrosoglutathione-loaded poly(vinyl alcohol), (2013) Colloids Surf., B, 108 C, pp. 178-184 | |
dc.description | Nagababu, E., Rifkind, J.M., Measurement of plasma nitrite by chemiluminescence (2010) Methods Mol. Biol., 610, pp. 41-49 | |
dc.description | Yang, F., Troncy, E., Francoeur, M., Vinet, B., Vinay, P., Czaika, G., Blaise, G., Effects of reducing reagents and temperature on conversion of nitrite and nitrate to nitric oxide and detection of NO by chemiluminescence (1997) Clin. Chem., 43, pp. 657-662 | |
dc.description | Zekarias, M.T., Rao, G.N., Evaluation of protonation constants of mercaptosuccinic acid in aqueous solutions of propylene glycol and dioxan (2012) J. Chilean Chem. Soc., 57, pp. 1054-1057 | |
dc.description | Pavia, D.L., Lampman, G.M., Kriz, G.S., Vyvyan, J.R., (2009) Introduction to Spectroscopy, , Cengage Learning, Belmont, CA, USA | |
dc.description | Assendert, H.E., Windle, A.H., Crystallinity in poly(vinyl alcohol) 1. An X-ray diffraction study of atactic PVOH (1998) Polymer, 39, pp. 4295-4302 | |
dc.description | Mateescu, M.A., Schell, H.D., Dimonie, M., Todireanu, S., Maior, O., Some peculiar properties of cross-linked polyvinyl alcohol (CL-PVA) related to the reticulation degree (1984) Polym. Bull., 11, pp. 421-427 | |
dc.description | Peppas, N.A., Khare, A.R., Preparation, structure and diffusional behavior of hydrogels in controlled release (1993) Adv. Drug Deliv. Rev., 11, pp. 1-35 | |
dc.description | Omidian, H., Park, K., Swelling agents and devices in oral drug delivery (2008) J. Drug Deliv. Sci. Technol., 18, pp. 83-93 | |
dc.description | Geise, G.M., Paul, D.R., Freeman, B.D., Fundamental water and salt transport properties of polymeric materials (2013) Prog. Polym. Sci., pp. 1-42 | |
dc.description | de Oliveira, M.G., Shishido, M., Seabra, A.B., Morgon, N.H., Thermal stability of primary S-nitrosothiols: roles of autocatalysis and structural effects on the rate of nitric oxide release (2002) J. Phys. Chem. A, pp. 8963-8970 | |
dc.description | Seabra, A.B., Martins, D., Simões, M.M.S.G., Silva, R., Brocchi, M., de Oliveira, M.G., Antibacterial nitric oxide-releasing polyester for the coating of blood-contacting artificial materials (2010) Artif. Organs, 34, pp. 204-214 | |
dc.description | Nilsson, G.E., Tenland, T., Oberg, P.A., Evaluation of a laser Doppler flowmeter for measurement of tissue blood flow (1980) IEEE Trans. Biomed. Eng., 27, pp. 597-604 | |
dc.language | en | |
dc.publisher | Elsevier | |
dc.relation | Colloids and Surfaces B: Biointerfaces | |
dc.rights | fechado | |
dc.source | Scopus | |
dc.title | Nitric Oxide-releasing Poly(vinyl Alcohol) Film For Increasing Dermal Vasodilation | |
dc.type | Artículos de revistas | |